电容去离子与碳负载花瓣状VS2复合材料耦合高效选择性吸附铅离子

Dexi Liu, Shichang Xu, Yanmeng Cai, Yue Wang, Jiaqi Guo, Youlin Li
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引用次数: 3

摘要

现有的分离技术,包括化学沉淀法和吸附法,不能快速、选择性地分离和回收电池废液中铅(II)中的重金属离子。二硫化钒由于其丰富的硫含量和优异的导电性,是一种有潜力的有效除铅废水材料。将具有选择性吸附能力的二硫化钒材料引入CDI工艺,构建了一种具有选择性吸附能力的耦合技术。采用水热法制备了n掺杂ZIF@vanadium二硫化物(ZAC@VS 2)复合材料。电吸附实验表明,ZAC@VS 2材料在500mg/L PbCl 2溶液中对铅离子(239.52mg/g)具有显著的饱和吸附能力。在fe3 + / pb2 + /Na +三重共混体系中,各溶质密度为100 mg/L时,对pb2 +的饱和吸附效率仍可保持在85.4%。此外,与Langmuir(r2 =0.873)吸附等温线模型相比,Freundlich模型(r2 =0.922)能更好地拟合吸附过程,证明吸附过程是多层非均相的。XPS测试和竞争吸附实验表明,双电层(EDL)和络合作用共同促进了ZAC@VS对重金属离子的选择性吸附。ZAC@VS 2复合电极在去除电池废液中的铅离子方面表现出优异的性能,表明在CDI中引入ZAC@VS 2去除重金属离子的潜力。
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A Coupling Technology of Capacitive Deionization and Carbon-Supported Petal-Like VS2 Composite for Effective and Selective Adsorption of Lead (II) Ions
The existing separation technologies, including chemical precipitation and adsorption process, cannot quickly and selectively separate and recycle heavy metal ions of lead (II) from battery waste liquid. Due to its rich sulfur content and excellent electrical conductivity, vanadium disulfide is a potential material for effectively removing lead from wastewater. The vanadium disulfide material with selective adsorption ability was introduced into CDI technology to construct a coupling technology with both advantages. The n-doped ZIF@vanadium disulfide (ZAC@VS 2 ) composites were successfully synthesized by hydrothermal method. Electrosorption experiments show that ZAC@VS 2 material presents the remarkable saturated adsorption capacity to lead(II) ions (239.52mg/g) in the 500mg/L PbCl 2 solution. In the triplex blend system (Fe 3+ /Pb 2+ /Na + ) with each solute density of 100 mg/L, the saturated adsorption efficiency of 85.4% to Pb 2+ can still be maintained. In addition, compared with the Langmuir(R 2 =0.873) adsorption isotherm model, the Freundlich model (R 2 =0.922) can be better used to fit the adsorption process, which proves that the adsorption process is multilayered and heterogeneous. XPS tests and competitive adsorption experiments show that the electric double layer (EDL) and complexation together promote the selective adsorption of heavy metal ions by ZAC@VS 2 . ZAC@VS 2 composite electrode shows excellent performance in the removal of lead ions in battery waste liquid, indicating the potential of introducing ZAC@VS 2 into CDI to remove heavy metal ions.
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